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耻垢分枝杆菌一种假定的低分子量青霉素结合蛋白(PBP)表现出DD-羧肽酶和β-内酰胺酶的显著生理特性。

A putative low-molecular-mass penicillin-binding protein (PBP) of Mycobacterium smegmatis exhibits prominent physiological characteristics of DD-carboxypeptidase and beta-lactamase.

作者信息

Bansal Ankita, Kar Debasish, Murugan Rajagopal A, Mallick Sathi, Dutta Mouparna, Pandey Satya Deo, Chowdhury Chiranjit, Ghosh Anindya S

机构信息

Department of Biotechnology, Indian Institute of Technology, Kharagpur, West Bengal PIN-721302, India.

出版信息

Microbiology (Reading). 2015 May;161(Pt 5):1081-1091. doi: 10.1099/mic.0.000074. Epub 2015 Mar 6.

Abstract

DD-carboxypeptidases (DD-CPases) are low-molecular-mass (LMM) penicillin-binding proteins (PBPs) that are mainly involved in peptidoglycan remodelling, but little is known about the dd-CPases of mycobacteria. In this study, a putative DD-CPase of Mycobacterium smegmatis, MSMEG_2433 is characterized. The gene for the membrane-bound form of MSMEG_2433 was cloned and expressed in Escherichia coli in its active form, as revealed by its ability to bind to the Bocillin-FL (fluorescent penicillin). Interestingly, in vivo expression of MSMEG_2433 could restore the cell shape oddities of the septuple PBP mutant of E. coli, which was a prominent physiological characteristic of DD-CPases. Moreover, expression of MSMEG_2433 in trans elevated beta-lactam resistance in PBP deletion mutants (ΔdacAdacC) of E. coli, strengthening its physiology as a dd-CPase. To confirm the biochemical reason behind such physiological behaviours, a soluble form of MSMEG_2433 (sMSMEG_2433) was created, expressed and purified. In agreement with the observed physiological phenomena, sMSMEG_2433 exhibited DD-CPase activity against artificial and peptidoglycan-mimetic DD-CPase substrates. To our surprise, enzymic analyses of MSMEG_2433 revealed efficient deacylation for beta-lactam substrates at physiological pH, which is a unique characteristic of beta-lactamases. In addition to the MSMEG_2433 active site that favours dd-CPase activity, in silico analyses also predicted the presence of an omega-loop-like region in MSMEG_2433, which is an important determinant of its beta-lactamase activity. Based on the in vitro, in vivo and in silico studies, we conclude that MSMEG_2433 is a dual enzyme, possessing both DD-CPase and beta-lactamase activities.

摘要

D-羧肽酶(DD-羧肽酶)是低分子量(LMM)青霉素结合蛋白(PBPs),主要参与肽聚糖重塑,但关于分枝杆菌的DD-羧肽酶知之甚少。在本研究中,对耻垢分枝杆菌的一种假定DD-羧肽酶MSMEG_2433进行了表征。MSMEG_2433膜结合形式的基因被克隆并在大肠杆菌中以其活性形式表达,这通过其与Bocillin-FL(荧光青霉素)结合的能力得以揭示。有趣的是,MSMEG_2433的体内表达可以恢复大肠杆菌七重PBP突变体的细胞形态异常,这是DD-羧肽酶的一个显著生理特征。此外,MSMEG_2433在大肠杆菌PBP缺失突变体(ΔdacAdacC)中的反式表达提高了β-内酰胺抗性,强化了其作为DD-羧肽酶的生理学特性。为了证实这种生理行为背后的生化原因,构建、表达并纯化了MSMEG_2433的可溶性形式(sMSMEG_2433)。与观察到的生理现象一致,sMSMEG_2433对人工和肽聚糖模拟DD-羧肽酶底物表现出DD-羧肽酶活性。令我们惊讶的是,对MSMEG_2433的酶学分析显示,在生理pH下其对β-内酰胺底物具有高效脱酰基作用,这是β-内酰胺酶的独特特征。除了有利于DD-羧肽酶活性的MSMEG_2433活性位点外,计算机分析还预测MSMEG_2433中存在类似ω-环的区域,这是其β-内酰胺酶活性的重要决定因素。基于体外、体内和计算机研究,我们得出结论,MSMEG_2433是一种双功能酶,同时具有DD-羧肽酶和β-内酰胺酶活性。

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